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迈向有效的抗病毒口服疗法:开发一种新型自双乳化药物递送系统以提高扎那米韦的肠道通透性。

Towards Effective Antiviral Oral Therapy: Development of a Novel Self-Double Emulsifying Drug Delivery System for Improved Zanamivir Intestinal Permeability.

作者信息

Ifrah Sapir, Dahan Arik, Debotton Nir

机构信息

Department of Clinical Pharmacology, School of Pharmacy, Faculty of Health Sciences, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel.

Department of Chemical Engineering, Shenkar College of Engineering and Design, Ramat-Gan 52526, Israel.

出版信息

Pharmaceutics. 2023 Oct 23;15(10):2518. doi: 10.3390/pharmaceutics15102518.

Abstract

Self-double emulsifying drug delivery systems have the potential to enhance the intestinal permeability of drugs classified under the Biopharmaceutics Classification System (BCS) class III. One such example is the antiviral agent zanamivir, exhibiting suboptimal oral absorption (with a bioavailability range of 1-5%). To address this challenge, we have developed an innovative oral formulation for zanamivir: a self-double nanoemulsifying Winsor delivery system (SDNE-WDS) consisting of the microemulsion, which subsequently yields final double nanoemulsion (W/O/W) upon interaction with water. Two distinct formulations were prepared: SDNE-WDS1, classified as a W/O microemulsion, and SDNE-WDS2, discovered to be a bicontinuous microemulsion. The inner microemulsions displayed a consistent radius of gyration, with an average size of 35.1 ± 2.1 nm. Following self-emulsification, the resultant zanamivir-loaded nanoemulsion droplets for zSDNE-WDS1 and zSDNE-WDS2 measured 542.1 ± 36.1 and 174.4 ± 3.4 nm, respectively. Both types of emulsions demonstrated the ability to enhance the transport of zanamivir across a parallel artificial membrane. Additionally, in situ rat intestinal perfusion studies involving drug-loaded SDNE-WDSs revealed a significantly increased permeability of zanamivir through the small intestinal wall. Notably, both SDNE-WDS formulations exhibited effective permeability (P) values that were 3.5-5.5-fold higher than those of the low/high permeability boundary marker metoprolol. This research emphasizes the success of SDNE-WDSs in overcoming intestinal permeability barriers and enabling the effective oral administration of zanamivir. These findings hold promise for advancing the development of efficacious oral administration of BCS class III drugs.

摘要

自双重乳化药物递送系统有潜力提高生物药剂学分类系统(BCS)III类药物的肠道通透性。抗病毒药物扎那米韦就是一个例子,它的口服吸收效果欠佳(生物利用度范围为1%-5%)。为应对这一挑战,我们开发了一种用于扎那米韦的创新口服制剂:一种自双重纳米乳化温莎递送系统(SDNE-WDS),它由微乳组成,微乳与水相互作用后会形成最终的双重纳米乳(W/O/W)。制备了两种不同的制剂:归类为W/O微乳的SDNE-WDS1和被发现为双连续微乳的SDNE-WDS2。内部微乳的回转半径一致,平均尺寸为35.1±2.1纳米。自乳化后,zSDNE-WDS1和zSDNE-WDS2负载扎那米韦的纳米乳液滴分别为542.1±36.1纳米和174.4±3.4纳米。两种乳液都显示出增强扎那米韦跨平行人工膜转运的能力。此外,涉及负载药物的SDNE-WDS的大鼠原位肠道灌注研究表明,扎那米韦通过小肠壁的通透性显著增加。值得注意的是,两种SDNE-WDS制剂的有效渗透率(P)值比低/高渗透性边界标记物美托洛尔的渗透率值高3.5至5.5倍。这项研究强调了SDNE-WDS在克服肠道通透性障碍和实现扎那米韦有效口服给药方面的成功。这些发现为推进BCS III类药物有效口服给药的开发带来了希望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b5f/10610354/b58fd1c48b62/pharmaceutics-15-02518-sch001.jpg

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